Microwave Engineering & Radar System detailed Syllabus for Electronics Engineering (EX), K scheme PDF has been taken from the MSBTE official website and presented for the diploma students. For Subject Code, Subject Name, Lectures, Tutorial, Practical/Drawing, Credits, Theory (Max & Min) Marks, Practical (Max & Min) Marks, Total Marks, and other information, do visit full semester subjects post given below.
For all other MSBTE Electronics Engineering 5th Sem K Scheme Syllabus PDF, do visit MSBTE Electronics Engineering 5th Sem K Scheme Syllabus PDF Subjects. The detailed Syllabus for microwave engineering & radar system is as follows.
Rationale
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Course Outcomes:
Students will be able to achieve & demonstrate the following COs on completion of course based learning
- Select waveguide for given microwave communication system.
- Test performance of microwave components.
- Construct RF circuits using RF devices.
- Interpret working of RADAR based systems for range detection.
- Maintain SONAR and various types of RADAR systems as microwave application.
Unit I
Fundamentals of Transmission Lines and Microwaves 1.1 Transmission lines: Definitions of standing waves, VSWR, reflection coefficient 1.2 Microwave frequency spectrum, IEEE and OSHA (Occupational Safety And Health Administration) standards and band designations, advantages and disadvantages of microwave signals 1.3 Rectangular waveguide: Cut off wavelength, cut off frequency, characteristic wave impedance, group and phase velocities (Definitions, formulae and Simple numerical) structure, advantages, disadvantages and applications of rectangular waveguide 1.4 Rectangular waveguide modes :TE, TM, TEM, dominant mode, field patterns of TE10, TE20, TE11 modes only 1.5 Circular waveguide: Structure, advantages, disadvantages and applications of circular waveguide, field pattern of TE11 mode only
Suggested Learning Pedagogie
Lecture Using Chalk-Board Video Demonstrations Flipped Classroom Presentations
Unit II
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Unit III
Microwave Tubes and Microwave Semiconductor Devices 3.1 Limitations of vacuum tubes at microwave frequencies 3.2 Microwave tube oscillators and amplifiers: Reflex klystron, magnetron, gyrotrons, backward wave oscillator, Travelling wave tube 3.3 Microwave diodes: Varactor diode, Gunn diode, tunnel diode, PIN diode, IMPATT diode, TRAPATT diode, BARITT diode (Construction, working principle and applications) 3.4 Construction, working principle and applications : Heterojunction Bipolar Transistors (HBT’s), High Electron Mobility Transistors (HEMT’s) 3.5 Microwave radiation hazards: Types (HERO,HERP,HERF) and preventive measures from hazards
Suggested Learning Pedagogie
Lecture Using Chalk-Board Video Demonstrations Case Study Hands-on
Unit IV
RADAR Fundamentals 4.1 Basic block diagram of RADAR system, Doppler effect, Definitions : Radar range, pulse width, Pulse Repetition Frequency (PRF), duty cycle 4.2 RADAR range equation derivation (simple numerical), significance of RADAR range, factors affecting RADAR range 4.3 Antenna Scanning types : Working principle of Horizontal, vertical, helical and spiral, Antenna Tracking types : Working principle of sequential, conical and mono pulse 4.4 Radar clutter : Properties and applications of surface clutter, sea clutter, land clutter 4.5 Display Methods: A-scope, PPI, RHI, RADAR Beacons
Suggested Learning Pedagogie
Lecture Using Chalk-Board Video Demonstrations Presentations Hands-on Site/Industry Visit
Unit V
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List of Experiments:
- Measurement of VSWR and reflection coefficient for the given length of transmission line
- * Determination of the frequency and wavelength of rectangular waveguide for TE10 mode
- * Measurement of power division in microwave tees E- plane, H- plane and EH plane using microwave test bench setup
- * Determination of coupling factor and insertion loss of the given circulator and isolator
- Measurement of phase shift of microwave phase shifter
- * Determination of tuning range of Reflex Klystron Microwave Tube
- Determination of output power and frequency of Gunn diode and plot its V-I characteristics
- * Determination of the maximum range of Doppler RADAR
- Determination of the rotations per minute (RPM) of a moving object using RADAR
- * Simulation of RADAR based practicals using any freeware/open-source simulation software 2
Self Learning
Micro Project
- Build a RADAR working model using Cardboard, Gear motor, Switch, Battery, Color Paper,etc.
- Develop a RADAR working model using Arduino Uno, Servo Motor, Breadboard, Ultrasonic Sensor (HC-SR04), Jumper Wires, etc.
- Measure attenuation of the given attenuator using microwave test bench setup.
- Measure the gain of the Horn antenna using given microwave test bench setup.
Assignment
- Solve given numericals based on Cut off wavelength, cut off frequency, characteristic wave impedance, group and phase velocities of rectangular waveguide.
- Solve given numericals based on RADAR range equation.
- Draw neat sketches of RADAR systems.
- Study microwave components (active and passive) and draw neat sketches.
- Draw field patterns of TE and TM modes of rectangular waveguide.
Student Activities
- Prepare a power point presentation on various types of microwave antennas.
- Prepare report on Comparative performance of microwave semiconductor devices/microwave tubes.
- To perform microwave waveguide simulations using freeware/Open source software’s.
- Conduct a Library / Internet based survey of RADAR displays and submit detail report of it.
- Conduct a market survey of consumer microwave components and submit detail report of it.
- Prepare a poster on microwave radiation hazards and its protective measures.
- To Illustrate the working principle of the following a. Microwave Tubes b. EM wave propagation prepare /download an animation and share with the class.
Visit
- Visit a place where waveguides are used for microwave communication (such as earth Station, Radio station, telephone exchange, airport. TV broadcast, navigation center) and prepare the report.
Laboratory Equipment
For the complete Syllabus, results, class timetable, and many other features kindly download the iStudy App
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Learning Materials / Books
- D. M. Pozar Microwave Engineering John Wiley Publication;4th edition (2013) ISBN: 978-8126541904
- R. E. Collins Foundation for Microwave Wiley Publication;2nd edition (2007) ISBN: 978- Engineering 8126515288
- V. C. Kshirsagar Microwave and RADAR Engineering Synergy knowledgeware, Mumbai. ISBN: 97893-833-5228-9
- K.K. Sharma Fundamentals of Microwave and S.Chand and Company New Delhi,2011, RADAR Engineering ISBN:9788121935371
- B. Smith and M. H. Carpentier The Microwave Engineering Handbook (E-Book) Springer International Publication;1st edition
- Terman, Frederick Emmons: Electronic and Radio Engineering McGraw-Hill,Fourth Edition,ISBN:601421982320:
- Merrill Skolnik Introduction to Radar Systems McGraw-Hill,ISBN-13: 978-0070445338, ISBN-10: 9780070445338
Learning Websites & Portals
- https://onlinecourses.nptel.ac.in/noc24_ee115/preview Swayam NPTEL videos on Microwave Engineering
- https://onlinecourses.nptel.ac.in/noc23_ee133/preview Swayam NPTEL videos on Principles And Techniques Of Modern Radar Systems
- https://home.sandiego.edu/~ekim/e194rfs01/ University of San Diego EEE 194 Section 4: RF & Microwave Engineering Spring 2001
- https://youtu.be/uPXLJfmrCUA?si=OQzaEtDiZeMjrnqV Design E plane tee using cst microwave studio
- https://youtu.be/EoWDC4FJK7Q? si=bSJ8Fz8Vb6NsbqG4 Design H Plane Tee using CST microwave studio
- https://youtu.be/pGbY59Q9smo? si=QrVy6HUM83g87tdU Design and analysis of Magic Tee.
- https://portal.coepvlab.ac.in/vlab/auth/home? dept=2&lab=2 Virtual Microwave Lab (IIT Dayalbagh)
For detail Syllabus of all other subjects of Electronics Engineering, K scheme do visit Electronics Engineering 5th Sem Syllabus for K scheme.
For all Electronics Engineering results, visit MSBTE Electronics Engineering all semester results direct links.